JOURNAL ARTICLE

Constrained opportunistic power control in wireless networks

Abstract

In the opportunistic power control algorithm (OPC), designed in each user tries to keep the product of its transmit power and its experienced effective interference to a constant, called the target signal-interference product (SIP). This increases the transmit power when the channel is good and reduces it when the channel is poor (opportunism). It has been shown that the OPC always converges to a fixed point irrespective of whether the power is constrained (where there is no upper bound on transmit power) or unconstrained (where an upper bound on transmit power is taken into account). It has also been shown via simulation that the throughput achieved by the unconstrained OPC is significant (as compared to other existing distributed schemes), and is an increasing function of the target-SIP set by users, in the sense that a higher target-SIP results in a higher throughput. In this paper, we show that in contrast to the unconstrained OPC, when the constrained OPC is applied, not only the throughput is not necessarily increased as the target-SIPs increase, but it may even decrease if some users set their target-SIPs at high values. Furthermore, we propose a heuristic solution to determine the target-SIPs by users in a distributed manner. Our simulation results show that the throughput achieved by our distributed setting of the target-SIPs very closely approaches the maximum achievable throughput by the constrained OPC, and is very close to the global optimum value.

Keywords:
Throughput Transmitter power output Computer science Power control Interference (communication) Heuristic Upper and lower bounds Channel (broadcasting) Power (physics) Computer network Wireless Wireless network Distributed algorithm Real-time computing Distributed computing Transmitter Mathematics Telecommunications

Metrics

1
Cited By
0.32
FWCI (Field Weighted Citation Impact)
7
Refs
0.67
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Topics

Wireless Communication Networks Research
Physical Sciences →  Computer Science →  Computer Networks and Communications
Advanced Wireless Network Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced MIMO Systems Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

Related Documents

JOURNAL ARTICLE

Transmission Power Control for Opportunistic QoS Provision in Wireless Networks

F. de S. ChavesMohamed Abbas‐TurkiHisham Abou‐KandilJoão Marcos Travassos Romano

Journal:   IEEE Transactions on Control Systems Technology Year: 2012 Vol: 21 (2)Pages: 315-331
JOURNAL ARTICLE

Power control based cooperative opportunistic routing in wireless sensor networks

Haifeng HuQi Zhu

Journal:   Journal of Electronics (China) Year: 2009 Vol: 26 (1)Pages: 52-63
JOURNAL ARTICLE

Opportunistic Scheduling with Power Control in Ad Hoc Wireless Networks

Reizel CasaquiteIn-Yeup KongMyung-Hyun YoonWon-Joo Hwang

Journal:   2006 8th International Conference Advanced Communication Technology Year: 2006 Vol: 1 Pages: 719-724
BOOK-CHAPTER

Delay-Constrained Multicasting with Power-Control in Wireless Networks

Yuan ZhangBo Yang

Lecture notes in computer science Year: 2005 Pages: 529-538
© 2026 ScienceGate Book Chapters — All rights reserved.